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由运动和双眼立体视觉引起的对三维结构感知的系统性扭曲。

Systematic distortion of perceived three-dimensional structure from motion and binocular stereopsis.

作者信息

Tittle J S, Todd J T, Perotti V J, Norman J F

机构信息

Department of Psychology, Ohio State University, Columbus 43210, USA.

出版信息

J Exp Psychol Hum Percept Perform. 1995 Jun;21(3):663-78. doi: 10.1037//0096-1523.21.3.663.

Abstract

The geometric relation between physical and perceived space as specified by binocular stereopsis and structure from motion was investigated. Four experimental tasks were used, each of which required a different aspect of three-dimensional (3-D) structure to be performed accurately. To examine whether the transformation between physical and perceptual space preserved the 3-D structural properties required to perform each of our tasks, the constancy of judged shape over changes in a depicted object's viewing distance or orientation was examined. Our results reveal that observers' judgments of 3-D shape from binocular stereopsis and motion contained systematic distortions: Perceived 3-D shape from motion was not invariant over orientation change and perceived 3-D structure from stereo, and motion and stereo in combination was not invariant over changes in viewing distance.

摘要

研究了由双眼立体视觉和运动结构所规定的物理空间与感知空间之间的几何关系。使用了四个实验任务,每个任务都要求准确执行三维(3-D)结构的不同方面。为了检验物理空间与感知空间之间的转换是否保留了执行我们每个任务所需的三维结构属性,研究了在描绘物体的观察距离或方向变化时判断形状的恒常性。我们的结果表明,观察者从双眼立体视觉和运动中对三维形状的判断包含系统性扭曲:从运动中感知到的三维形状在方向变化时并非不变,从立体视觉、运动以及立体视觉与运动相结合中感知到的三维结构在观察距离变化时也并非不变。

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